6CP040065-127-71-31-17-7-2L Allicdata Electronics
Allicdata Part #:

6CP040065-127-71-31-17-7-2L-ND

Manufacturer Part#:

6CP040065-127-71-31-17-7-2L

Price: $ 0.00
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: THERMOELECTRIC
More Detail: Peltier Module
DataSheet: 6CP040065-127-71-31-17-7-2L datasheet6CP040065-127-71-31-17-7-2L Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Outline L x W x H: --
Qmax @ Th: --
Delta Tmax @ Th: --
Operating Temperature: --
Features: --
Description

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A 6CP040065-127-71-31-17-7-2L module is a thermal-thermoelectric, Peltier module. It\'s often used in temperature control, humidity control, gas flow control, energy regeneration, and other applications requiring precise temperature control. It is an efficient device specifically designed to create a temperature differential between two points or surfaces. The 6CP040065-127-71-31-17-7-2L module works on the principle of thermoelectric cooling, which is the process of converting electrical energy into thermal energy.

The 6CP040065-127-71-31-17-7-2L module utilizes an alternating current (AC) electric field, generated by a power source, to generate a temperature difference between two sides of the module. The module is composed of two sides, a cold side and a hot side, each with a different resistivity. The resistivity of each side is designed to balance out the ambient temperatures that it is exposed to, which keeps the temperature differential maintained.

The 6CP040065-127-71-31-17-7-2L module is composed of two thermoelectric legs, typically made of alternating n and p-type semi-conductors. A Peltier junction is created when the two ends of the thermoelectric legs are placed against opposite sides of a thermally conductive material, such as an aluminum plate. The thermoelectric legs are then connected to an AC power source, which provides the electric field needed to create the temperature difference. The temperature difference can be sustained by adjusting the amount of energy applied to the module.

When the power supply is removed, the 6CP040065-127-71-31-17-7-2L module will quickly return to its ambient temperature as the thermal energy stored within the module dissipates. This makes the 6CP040065-127-71-31-17-7-2L module an efficient device, since the energy used to create the temperature difference is quickly dissipated when the power supply is removed or turned off. This means that the energy used by the module is only used when needed, resulting in decreased energy consumption and cost savings.

The 6CP040065-127-71-31-17-7-2L module can be used in a variety of temperature control applications, such as cooling, heating, dehumidification, and more. It is often used in industrial applications, such as semiconductor production, control of hot-runner temperatures, and medical laser cooling. The 6CP040065-127-71-31-17-7-2L module can also be used in consumer products, such as laptop cooling systems, printers, portable air conditioners, and cooling systems for gaming consoles.

The 6CP040065-127-71-31-17-7-2L module is an efficient and reliable device that can be used in many different applications. It utilizes thermoelectric cooling to create a temperature differential between two points or surfaces, using an alternating current (AC) electric field. The module is composed of two thermoelectric legs, typically made of alternating n and p-type semi-conductors, and is capable of sustaining a temperature difference even when the power source is removed. It can be used in a variety of temperature control applications, including cooling, heating, dehumidification, and more.

The specific data is subject to PDF, and the above content is for reference

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